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    기술보고서 게시판 내용
    타이틀 C-Band Airport Surface Communications System Standards Development. Phase II Final Report. Volume 1: Concepts of Use, Initial System Requirements, Architecture, and AeroMACS Design Considerations
    저자 Hall, Edward;; Isaacs, James;; Henriksen, Steve;; Zelkin, Natalie
    Keyword AIRPORTS;; C BAND;; DATA TRANSMISSION;; MOBILE COMMUNICATION SYSTEMS;; PRODUCT DEVELOPMENT;; PROTOTYPES;; PULSE COMMUNICATION;; RADIO COMMUNICATION;; SAFETY;; SYSTEMS ENGINEERING;; TECHNOLOGIES;; TELECOMMUNICATION;; TEST STANDS
    URL http://hdl.handle.net/2060/20110012019
    보고서번호 NASA/CR-2011-216997/VOL1
    발행년도 2011
    출처 NTRS (NASA Technical Report Server)
    ABSTRACT This report is provided as part of ITT s NASA Glenn Research Center Aerospace Communication Systems Technical Support (ACSTS) contract NNC05CA85C, Task 7: New ATM Requirements-Future Communications, C-Band and L-Band Communications Standard Development and was based on direction provided by FAA project-level agreements for New ATM Requirements-Future Communications. Task 7 included two subtasks. Subtask 7-1 addressed C-band 񢹣- to 5150-MHz) airport surface data communications standards development, systems engineering, test bed and prototype development, and tests and demonstrations to establish operational capability for the Aeronautical Mobile Airport Communications System (AeroMACS). Subtask 7-2 focused on systems engineering and development support of the L-band digital aeronautical communications system (L-DACS). Subtask 7-1 consisted of two phases. Phase I included development of AeroMACS concepts of use, requirements, architecture, and initial high-level safety risk assessment. Phase II builds on Phase I results and is presented in two volumes. Volume I (this document) is devoted to concepts of use, system requirements, and architecture, including AeroMACS design considerations. Volume II describes an AeroMACS prototype evaluation and presents final AeroMACS recommendations. This report also describes airport categorization and channelization methodologies. The purposes of the airport categorization task were Ƒ) to facilitate initial AeroMACS architecture designs and enable budgetary projections by creating a set of airport categories based on common airport characteristics and design objectives, and ƒ) to offer high-level guidance to potential AeroMACS technology and policy development sponsors and service providers. A channelization plan methodology was developed because a common global methodology is needed to assure seamless interoperability among diverse AeroMACS services potentially supplied by multiple service providers.

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